Ionuţ Ioana, Vodnar Dan Cristian, Oniga Ilioara, Oniga Ovidiu, Tiperciuc Brînduşa, Tamaian Radu
Pharmaceutical Chemistry Department, IuliuHaţieganuUniversity of Medicine and Pharmacy, 41 Victor Babeş Street, Cluj-Napoca, Romania.
Department of Food Science, University of Agricultural Sciences and Veterinary Medicine, 3-5 Manăştur Street, Cluj-Napoca, Romania.
Pak J Pharm Sci. 2016 Jan;29(1 Suppl):261-72.
Various thiosemicarbazones (TSCs) and their heterocyclic thiadiazolines (TDZ) possess important biological effects. In addition, chromenyl derivatives exhibit a wide range of pharmacological activities. Based on these findings and as a continuation of our research on nitrogen and sulfur containing compounds, we investigated a series of previously reported chromenyl-TSCs (1a-j) and chromenyl-TDZs (2a-j) for their in vitro antimicrobial activities against two bacterial and four fungal strains. MIC and MBC/MFC (µg/mL) values of these compounds were evaluated and compared to those of Spectinomycin, Moxifloxacin and Fluconazole, used as reference drugs. For a better understanding of the drug-receptor interactions, all the compounds were further subjected to molecular docking against four targets that were chosen based on the specific mechanism of action of the reference drugs used in the antimicrobial screening. All compounds tested showed equal or higher antibacterial/antifungal activities relative to the used reference drugs. In silico studies (molecular docking) revealed that all the investigated compounds showed good binding energies towards four receptor protein targets and supported their antimicrobial properties.
各种硫代氨基脲(TSCs)及其杂环噻二唑啉(TDZ)具有重要的生物学效应。此外,色烯基衍生物表现出广泛的药理活性。基于这些发现,并作为我们对含氮和硫化合物研究的延续,我们研究了一系列先前报道的色烯基-TSCs(1a-j)和色烯基-TDZs(2a-j)对两种细菌菌株和四种真菌菌株的体外抗菌活性。评估了这些化合物的MIC和MBC/MFC(μg/mL)值,并与用作参考药物的壮观霉素、莫西沙星和氟康唑的MIC和MBC/MFC值进行比较。为了更好地理解药物-受体相互作用,根据抗菌筛选中使用的参考药物的特定作用机制,选择了四个靶点,对所有化合物进一步进行分子对接。所有测试的化合物相对于所使用的参考药物均显示出同等或更高的抗菌/抗真菌活性。计算机模拟研究(分子对接)表明,所有研究的化合物对四个受体蛋白靶点均显示出良好的结合能,并支持了它们的抗菌特性。